numerical and experimental forming analyses



Khemais Saanouni Damage Mechanics in Metal Forming. Advanced Modeling and Numerical Simulation Khemais Saanouni Damage Mechanics in Metal Forming. Advanced Modeling and Numerical Simulation Новинка

Khemais Saanouni Damage Mechanics in Metal Forming. Advanced Modeling and Numerical Simulation

21461.93 руб.
The aim of this book is to summarize the current most effective methods for modeling, simulating, and optimizing metal forming processes, and to present the main features of new, innovative methods currently being developed which will no doubt be the industrial tools of tomorrow. It discusses damage (or defect) prediction in virtual metal forming, using advanced multiphysical and multiscale fully coupled constitutive equations. Theoretical formulation, numerical aspects as well as application to various sheet and bulk metal forming are presented in detail. Virtual metal forming is nowadays inescapable when looking to optimize numerically various metal forming processes in order to design advanced mechanical components. To do this, highly predictive constitutive equations accounting for the full coupling between various physical phenomena at various scales under large deformation including the ductile damage occurrence are required. In addition, fully 3D adaptive numerical methods related to time and space discretization are required in order to solve accurately the associated initial and boundary value problems. This book focuses on these two main and complementary aspects with application to a wide range of metal forming and machining processes. Contents 1. Elements of Continuum Mechanics and Thermodynamics. 2. Thermomechanically-Consistent Modeling of the Metals Behavior with Ductile Damage. 3. Numerical Methods for Solving Metal Forming Problems. 4. Application to Virtual Metal Forming.
Paul Williams D. Modeling Atmospheric and Oceanic Flows. Insights from Laboratory Experiments and Numerical Simulations Paul Williams D. Modeling Atmospheric and Oceanic Flows. Insights from Laboratory Experiments and Numerical Simulations Новинка

Paul Williams D. Modeling Atmospheric and Oceanic Flows. Insights from Laboratory Experiments and Numerical Simulations

11958.73 руб.
Modeling Atmospheric and Oceanic Flows: Insights from Laboratory Experiments and Numerical Simulations provides a broad overview of recent progress in using laboratory experiments and numerical simulations to model atmospheric and oceanic fluid motions. This volume not only surveys novel research topics in laboratory experimentation, but also highlights recent developments in the corresponding computational simulations. As computing power grows exponentially and better numerical codes are developed, the interplay between numerical simulations and laboratory experiments is gaining paramount importance within the scientific community. The lessons learnt from the laboratory–model comparisons in this volume will act as a source of inspiration for the next generation of experiments and simulations. Volume highlights include: Topics pertaining to atmospheric science, climate physics, physical oceanography, marine geology and geophysics Overview of the most advanced experimental and computational research in geophysics Recent developments in numerical simulations of atmospheric and oceanic fluid motion Unique comparative analysis of the experimental and numerical approaches to modeling fluid flow Modeling Atmospheric and Oceanic Flows will be a valuable resource for graduate students, researchers, and professionals in the fields of geophysics, atmospheric sciences, oceanography, climate science, hydrology, and experimental geosciences.
Hashiguchi Koichi Introduction to Finite Strain Theory for Continuum Elasto-Plasticity Hashiguchi Koichi Introduction to Finite Strain Theory for Continuum Elasto-Plasticity Новинка

Hashiguchi Koichi Introduction to Finite Strain Theory for Continuum Elasto-Plasticity

12671.25 руб.
Comprehensive introduction to finite elastoplasticity, addressing various analytical and numerical analyses & including state-of-the-art theories Introduction to Finite Elastoplasticity presents introductory explanations that can be readily understood by readers with only a basic knowledge of elastoplasticity, showing physical backgrounds of concepts in detail and derivation processes of almost all equations. The authors address various analytical and numerical finite strain analyses, including new theories developed in recent years, and explain fundamentals including the push-forward and pull-back operations and the Lie derivatives of tensors. As a foundation to finite strain theory, the authors begin by addressing the advanced mathematical and physical properties of continuum mechanics. They progress to explain a finite elastoplastic constitutive model, discuss numerical issues on stress computation, implement the numerical algorithms for stress computation into large-deformation finite element analysis and illustrate several numerical examples of boundary-value problems. Programs for the stress computation of finite elastoplastic models explained in this book are included in an appendix, and the code can be downloaded from an accompanying website.
Feng-Chen Li Turbulent Drag Reduction by Surfactant Additives Feng-Chen Li Turbulent Drag Reduction by Surfactant Additives Новинка

Feng-Chen Li Turbulent Drag Reduction by Surfactant Additives

16902 руб.
Turbulent drag reduction by additives has long been a hot research topic. This phenomenon is inherently associated with multifold expertise. Solutions of drag-reducing additives are usually viscoelastic fluids having complicated rheological properties. Exploring the characteristics of drag-reduced turbulent flows calls for uniquely designed experimental and numerical simulation techniques and elaborate theoretical considerations. Pertinently understanding the turbulent drag reduction mechanism necessities mastering the fundamentals of turbulence and establishing a proper relationship between turbulence and the rheological properties induced by additives. Promoting the applications of the drag reduction phenomenon requires the knowledge from different fields such as chemical engineering, mechanical engineering, municipal engineering, and so on. This book gives a thorough elucidation of the turbulence characteristics and rheological behaviors, theories, special techniques and application issues for drag-reducing flows by surfactant additives based on the state-of-the-art of scientific research results through the latest experimental studies, numerical simulations and theoretical analyses. Covers turbulent drag reduction, heat transfer reduction, complex rheology and the real-world applications of drag reduction Introduces advanced testing techniques, such as PIV, LDA, and their applications in current experiments, illustrated with multiple diagrams and equations Real-world examples of the topic’s increasingly important industrial applications enable readers to implement cost- and energy-saving measures Explains the tools before presenting the research results, to give readers coverage of the subject from both theoretical and experimental viewpoints Consolidates interdisciplinary information on turbulent drag reduction by additives Turbulent Drag Reduction by Surfactant Additives is geared for researchers, graduate students, and engineers in the fields of Fluid Mechanics, Mechanical Engineering, Turbulence, Chemical Engineering, Municipal Engineering. Researchers and practitioners involved in the fields of Flow Control, Chemistry, Computational Fluid Dynamics, Experimental Fluid Dynamics, and Rheology will also find this book to be a much-needed reference on the topic.
Adnan Ibrahimbegovic From Microstructure Investigations to Multiscale Modeling. Bridging the Gap Adnan Ibrahimbegovic From Microstructure Investigations to Multiscale Modeling. Bridging the Gap Новинка

Adnan Ibrahimbegovic From Microstructure Investigations to Multiscale Modeling. Bridging the Gap

11190.63 руб.
Mechanical behaviors of materials are highly influenced by their architectures and/or microstructures. Hence, progress in material science involves understanding and modeling the link between the microstructure and the material behavior at different scales. This book gathers contributions from eminent researchers in the field of computational and experimental material modeling. It presents advanced experimental techniques to acquire the microstructure features together with dedicated numerical and analytical tools to take into account the randomness of the micro-structure.
Chandra Shekar J., Kolakoti Aditya Numerical Analysis of Boundary Layer Flow Over 3D Aerofoil Section Chandra Shekar J., Kolakoti Aditya Numerical Analysis of Boundary Layer Flow Over 3D Aerofoil Section Новинка

Chandra Shekar J., Kolakoti Aditya Numerical Analysis of Boundary Layer Flow Over 3D Aerofoil Section

9277 руб.
In the present study, the numerical study is carried out for boundary layer flow over 3D aerofoil section and the aerodynamic performance of NACA aerofoil are analyzed by studying the lift and drag coefficient of the aerofoil.The results obtained in the case of boundary layer flow over the 3D aerofoil section are compared with the experimental data as available in the literature. The experimental data for NACA 64-009 from wind tunnel is validated with simulations results computed in FLUENT. The aerofoil is cambered and measured to be around 1mt. The simulations for boundary layer flow for NACA 64-009 is performed at various angles of attacks. In addition, the lift coefficient, drag coefficient, pressure contour and velocity contour are computed.
Bouchaib Radi Material Forming Processes. Simulation, Drawing, Hydroforming and Additive Manufacturing Bouchaib Radi Material Forming Processes. Simulation, Drawing, Hydroforming and Additive Manufacturing Новинка

Bouchaib Radi Material Forming Processes. Simulation, Drawing, Hydroforming and Additive Manufacturing

9647.09 руб.
Manufacturing industries strive to improve the quality and reliability of their products, while simultaneously reducing production costs. To do this, modernized work tools must be produced; this will enable a reduction in the duration of the product development cycle, optimization of product development procedures, and ultimately improvement in the productivity of design and manufacturing phases. Numerical simulations of forming processes are used to this end, and in this book various methods and models for forming processes (including stamping, hydroforming and additive manufacturing) are presented. The theoretical and numerical advances of these processes involving large deformation mechanics on the basis of large transformations are explored, in addition to the various techniques for optimization and calculation of reliability. The advances and techniques within this book will be of interest to professional engineers in the automotive, aerospace, defence and other industries, as well as graduates and undergraduates in these fields.
Vitoriano Ruas Numerical Methods for Partial Differential Equations. An Introduction Vitoriano Ruas Numerical Methods for Partial Differential Equations. An Introduction Новинка

Vitoriano Ruas Numerical Methods for Partial Differential Equations. An Introduction

6590.04 руб.
Numerical Methods for Partial Differential Equations: An Introduction Vitoriano Ruas, Sorbonne Universités, UPMC – Université Paris 6, France A comprehensive overview of techniques for the computational solution of PDE's Numerical Methods for Partial Differential Equations: An Introduction covers the three most popular methods for solving partial differential equations: the finite difference method, the finite element method and the finite volume method. The book combines clear descriptions of the three methods, their reliability, and practical implementation aspects. Justifications for why numerical methods for the main classes of PDE's work or not, or how well they work, are supplied and exemplified. Aimed primarily at students of Engineering, Mathematics, Computer Science, Physics and Chemistry among others this book offers a substantial insight into the principles numerical methods in this class of problems are based upon. The book can also be used as a reference for research work on numerical methods for PDE’s. Key features: A balanced emphasis is given to both practical considerations and a rigorous mathematical treatment The reliability analyses for the three methods are carried out in a unified framework and in a structured and visible manner, for the basic types of PDE's Special attention is given to low order methods, as practitioner's overwhelming default options for everyday use New techniques are employed to derive known results, thereby simplifying their proof Supplementary material is available from a companion website.
Ronak Khandelwal, Uday A. Dabade Performance Analysis of Electromagnetic Forming Process Ronak Khandelwal, Uday A. Dabade Performance Analysis of Electromagnetic Forming Process Новинка

Ronak Khandelwal, Uday A. Dabade Performance Analysis of Electromagnetic Forming Process

3139 руб.
Master's Thesis from the year 2014 in the subject Engineering - Mechanical Engineering, grade: -, , course: Electromagnetic Forming Process, language: English, abstract: Electromagnetic Forming Process (EMF) is advanced high velocity metal forming process which deals with the application of high energy magnetic surge for very short duration of time in order to attain desired deformation. In this work, simulation of EMF process for tube bulging is performed and experimental validation is carried out. For simulation, COMSOL Multiphysics software is used. Simulation is performed for two material, aluminium 6063-O and copper. The results of simulation are validated by experiments on aluminum tube.
James Elkins What is Interesting Writing in Art History? James Elkins What is Interesting Writing in Art History? Новинка

James Elkins What is Interesting Writing in Art History?

2464 руб.
This is a book about how art history is written. It includes detailed analyses of a dozen important texts, and theories about what counts as "interesting" or "experimental" writing on art. There are chapters on texts by Rosalind Krauss, T.J. Clark, Alexander Nemerov, Gilles Deleuze, Helene Cixous, Leo Steinberg, Jean-Louis Schefer, and others; a chapter on institutions that teach experimental writing on art; analyses of rival concepts of the essay; and chapters on the absence of literary criticism in the disciplines of art history, visual studies, art theory, and art criticism.
de Volson Wood Turbines, theoretical and practical, with numerical examples and experimental results and many illustrations de Volson Wood Turbines, theoretical and practical, with numerical examples and experimental results and many illustrations Новинка

de Volson Wood Turbines, theoretical and practical, with numerical examples and experimental results and many illustrations

841 руб.
Эта книга — репринт оригинального издания (издательство "New York, J. Wiley & Sons", 1896 год), созданный на основе электронной копии высокого разрешения, которую очистили и обработали вручную, сохранив структуру и орфографию оригинального издания. Редкие, забытые и малоизвестные книги, изданные с петровских времен до наших дней, вновь доступны в виде печатных книг.
Razvan Mezei A. An Introduction to SAGE Programming. With Applications to SAGE Interacts for Numerical Methods Razvan Mezei A. An Introduction to SAGE Programming. With Applications to SAGE Interacts for Numerical Methods Новинка

Razvan Mezei A. An Introduction to SAGE Programming. With Applications to SAGE Interacts for Numerical Methods

5784.59 руб.
Features a simplified presentation of numerical methods by introducing and implementing SAGE programs An Introduction to SAGE Programming: With Applications to SAGE Interacts for Numerical Methods emphasizes how to implement numerical methods using SAGE Math and SAGE Interacts and also addresses the fundamentals of computer programming, including if statements, loops, functions, and interacts. The book also provides a unique introduction to SAGE and its computer algebra system capabilities; discusses second and higher order equations and estimate limits; and determines derivatives, integrals, and summations. Providing critical resources for developing successful interactive SAGE numerical computations, the book is accessible without delving into the mathematical rigor of numerical methods. The author illustrates the benefits of utilizing the SAGE language for calculus and the numerical analysis of various methods such as bisection methods, numerical integration, Taylor’s expansions, and Newton’s iterations. Providing an introduction to the terminology and concepts involved, An Introduction to SAGE Programming: With Applications to SAGE Interacts for Numerical Methods also features: An introduction to computer programming using SAGE Many practical examples throughout to illustrate the application of SAGE Interacts for various numerical methods Discussions on how to use SAGE Interacts and SAGE Cloud in order to create mathematical demonstrations Numerous homework problems and exercises that allow readers to practice their programming skillset A companion website that includes related SAGE programming code and select solutions to the homework problems and exercises An Introduction to SAGE Programming: With Applications to SAGE Interacts for Numerical Methods is an ideal reference for applied mathematicians who need to employ SAGE for the study of numerical methods and analysis. The book is also an appropriate supplemental textbook for upper-undergraduate and graduate-level courses in numerical methods.
Petre Teodorescu Numerical Analysis with Applications in Mechanics and Engineering Petre Teodorescu Numerical Analysis with Applications in Mechanics and Engineering Новинка

Petre Teodorescu Numerical Analysis with Applications in Mechanics and Engineering

10264.36 руб.
A much-needed guide on how to use numerical methods to solve practical engineering problems Bridging the gap between mathematics and engineering, Numerical Analysis with Applications in Mechanics and Engineering arms readers with powerful tools for solving real-world problems in mechanics, physics, and civil and mechanical engineering. Unlike most books on numerical analysis, this outstanding work links theory and application, explains the mathematics in simple engineering terms, and clearly demonstrates how to use numerical methods to obtain solutions and interpret results. Each chapter is devoted to a unique analytical methodology, including a detailed theoretical presentation and emphasis on practical computation. Ample numerical examples and applications round out the discussion, illustrating how to work out specific problems of mechanics, physics, or engineering. Readers will learn the core purpose of each technique, develop hands-on problem-solving skills, and get a complete picture of the studied phenomenon. Coverage includes: How to deal with errors in numerical analysis Approaches for solving problems in linear and nonlinear systems Methods of interpolation and approximation of functions Formulas and calculations for numerical differentiation and integration Integration of ordinary and partial differential equations Optimization methods and solutions for programming problems Numerical Analysis with Applications in Mechanics and Engineering is a one-of-a-kind guide for engineers using mathematical models and methods, as well as for physicists and mathematicians interested in engineering problems.
Andrew Rutherford ANOVA and ANCOVA. A GLM Approach Andrew Rutherford ANOVA and ANCOVA. A GLM Approach Новинка

Andrew Rutherford ANOVA and ANCOVA. A GLM Approach

10057.81 руб.
Provides an in-depth treatment of ANOVA and ANCOVA techniques from a linear model perspective ANOVA and ANCOVA: A GLM Approach provides a contemporary look at the general linear model (GLM) approach to the analysis of variance (ANOVA) of one- and two-factor psychological experiments. With its organized and comprehensive presentation, the book successfully guides readers through conventional statistical concepts and how to interpret them in GLM terms, treating the main single- and multi-factor designs as they relate to ANOVA and ANCOVA. The book begins with a brief history of the separate development of ANOVA and regression analyses, and then goes on to demonstrate how both analyses are incorporated into the understanding of GLMs. This new edition now explains specific and multiple comparisons of experimental conditions before and after the Omnibus ANOVA, and describes the estimation of effect sizes and power analyses leading to the determination of appropriate sample sizes for experiments to be conducted. Topics that have been expanded upon and added include: Discussion of optimal experimental designs Different approaches to carrying out the simple effect analyses and pairwise comparisons with a focus on related and repeated measure analyses The issue of inflated Type 1 error due to multiple hypotheses testing Worked examples of Shaffer's R test, which accommodates logical relations amongst hypotheses ANOVA and ANCOVA: A GLM Approach, Second Edition is an excellent book for courses on linear modeling at the graduate level. It is also a suitable reference for researchers and practitioners in the fields of psychology and the biomedical and social sciences.
Wieslaw Ostachowicz Guided Waves in Structures for SHM. The Time - domain Spectral Element Method Wieslaw Ostachowicz Guided Waves in Structures for SHM. The Time - domain Spectral Element Method Новинка

Wieslaw Ostachowicz Guided Waves in Structures for SHM. The Time - domain Spectral Element Method

12734.89 руб.
Understanding and analysing the complex phenomena related to elastic wave propagation has been the subject of intense research for many years and has enabled application in numerous fields of technology, including structural health monitoring (SHM). In the course of the rapid advancement of diagnostic methods utilising elastic wave propagation, it has become clear that existing methods of elastic wave modeling and analysis are not always very useful; developing numerical methods aimed at modeling and analysing these phenomena has become a necessity. Furthermore, any methods developed need to be verified experimentally, which has become achievable with the advancement of measurement methods utilising laser vibrometry. Guided Waves in Structures for SHM reports on the simulation, analysis and experimental investigation related propagation of elastic waves in isotropic or laminated structures. The full spectrum of theoretical and practical issues associated with propagation of elastic waves is presented and discussed in this one study. Key features: Covers both numerical and experimental aspects of modeling, analysis and measurement of elastic wave propagation in structural elements formed from isotropic or composite materials Comprehensively discusses the application of the Spectral Finite Element Method for modelling and analysing elastic wave propagation in diverse structural elements Presents results of experimental measurements employing advanced laser technologies, validating the quality and correctness of the developed numerical models Accompanying website (www.wiley.com/go/ostachowicz) contains demonstration versions of commercial software developed by the authors for modelling and analyzing elastic wave propagation using the Spectral Finite Element Method Guided Waves in Structures for SHM provides a state of the art resource for researchers and graduate students in structural health monitoring, signal processing and structural dynamics. This book should also provide a useful reference for practising engineers within structural health monitoring and non-destructive testing.
Contemporary Issues in Educational Policy and School Outcomes (PB) Contemporary Issues in Educational Policy and School Outcomes (PB) Новинка

Contemporary Issues in Educational Policy and School Outcomes (PB)

6289 руб.
This book is the fifth in a series on research and theory dedicated to advancing our understanding of schools through empiricalstudy and theoretical analysis. Scholars, both young and established, are invited to publish original analyses, but we especiallyencourage young scholars to contribute to this series. The current volume is similar to its predecessors in that it provides a mixof beginning and established scholars and a broad range of theoretical perspectives; in all 14 authors contributed to 9 separatebut related analyses, which were selected for publication this year.These chapters underscore the significance of educational policy in contemporary public education and in particular the impactof accountability policy on school outcomes. Public schools are increasingly being held accountable for students achieving athigher levels in both basic skills and higher-level learning outcomes. Of course, all policy is enacted by teachers in classroomand sometimes changed or distorted in the process. The challenge is to improve student outcomes without permitting accountabilitytesting to extinguish innovation and creativity in schools.This book series on Theory and Research in Educational Administration is about understanding schools. We welcome articlesand analyses that explain school organizations and administration. We are interested in the "why" questions about schools. Tothat end, case analyses, surveys, large data base analyses, experimental studies, and theoretical...
Francisco Javier Blanco Silva Learning Scipy for Numerical and Scientific Computing Francisco Javier Blanco Silva Learning Scipy for Numerical and Scientific Computing Новинка

Francisco Javier Blanco Silva Learning Scipy for Numerical and Scientific Computing

3827 руб.
Книга "Learning Scipy for Numerical and Scientific Computing".
Zhen-Guo Wang Internal Combustion Processes of Liquid Rocket Engines. Modeling and Numerical Simulations Zhen-Guo Wang Internal Combustion Processes of Liquid Rocket Engines. Modeling and Numerical Simulations Новинка

Zhen-Guo Wang Internal Combustion Processes of Liquid Rocket Engines. Modeling and Numerical Simulations

11190.63 руб.
This book concentrates on modeling and numerical simulations of combustion in liquid rocket engines, covering liquid propellant atomization, evaporation of liquid droplets, turbulent flows, turbulent combustion, heat transfer, and combustion instability. It presents some state of the art models and numerical methodologies in this area. The book can be categorized into two parts. Part 1 describes the modeling for each subtopic of the combustion process in the liquid rocket engines. Part 2 presents detailed numerical methodology and several representative applications in simulations of rocket engine combustion.
Robert Easterling G. Fundamentals of Statistical Experimental Design and Analysis Robert Easterling G. Fundamentals of Statistical Experimental Design and Analysis Новинка

Robert Easterling G. Fundamentals of Statistical Experimental Design and Analysis

6945.91 руб.
Professionals in all areas – business; government; the physical, life, and social sciences; engineering; medicine, etc. – benefit from using statistical experimental design to better understand their worlds and then use that understanding to improve the products, processes, and programs they are responsible for. This book aims to provide the practitioners of tomorrow with a memorable, easy to read, engaging guide to statistics and experimental design. This book uses examples, drawn from a variety of established texts, and embeds them in a business or scientific context, seasoned with a dash of humor, to emphasize the issues and ideas that led to the experiment and the what-do-we-do-next? steps after the experiment. Graphical data displays are emphasized as means of discovery and communication and formulas are minimized, with a focus on interpreting the results that software produce. The role of subject-matter knowledge, and passion, is also illustrated. The examples do not require specialized knowledge, and the lessons they contain are transferrable to other contexts. Fundamentals of Statistical Experimental Design and Analysis introduces the basic elements of an experimental design, and the basic concepts underlying statistical analyses. Subsequent chapters address the following families of experimental designs: Completely Randomized designs, with single or multiple treatment factors, quantitative or qualitative Randomized Block designs Latin Square designs Split-Unit designs Repeated Measures designs Robust designs Optimal designs Written in an accessible, student-friendly style, this book is suitable for a general audience and particularly for those professionals seeking to improve and apply their understanding of experimental design.
Andreas Ochsner Cellular and Porous Materials. Thermal Properties Simulation and Prediction Andreas Ochsner Cellular and Porous Materials. Thermal Properties Simulation and Prediction Новинка

Andreas Ochsner Cellular and Porous Materials. Thermal Properties Simulation and Prediction

22226.75 руб.
Providing the reader with a solid understanding of the fundamentals as well as an awareness of recent advances in properties and applications of cellular and porous materials, this handbook and ready reference covers all important analytical and numerical methods for characterizing and predicting thermal properties. In so doing it directly addresses the special characteristics of foam-like and hole-riddled materials, combining theoretical and experimental aspects for characterization purposes.
Gerhard Ziegler Numerical Distance Protection. Principles and Applications Gerhard Ziegler Numerical Distance Protection. Principles and Applications Новинка

Gerhard Ziegler Numerical Distance Protection. Principles and Applications

5788.99 руб.
Distance protection provides the basis for network protection in transmission systems and meshed distribution systems. This book covers the fundamentals of distance protection and the special features of numerical technology. The emphasis is placed on the application of numerical distance relays in distribution and transmission systems. This book is aimed at students and engineers who wish to familiarise themselves with the subject of power system protection, as well as the experienced user, entering the area of numerical distance protection. Furthermore it serves as a reference guide for solving application problems. For this fourth edition all contents, especially the descriptions of numerical protection devices and the very useful appendix have been revised and updated.
Gerhard Ziegler Numerical Distance Protection. Principles and Applications Gerhard Ziegler Numerical Distance Protection. Principles and Applications Новинка

Gerhard Ziegler Numerical Distance Protection. Principles and Applications

2213.51 руб.
Distance protection provides the basis for network protection in transmission systems and meshed distribution systems. This book covers the fundamentals of distance protection and the special features of numerical technology. The emphasis is placed on the application of numerical distance relays in distribution and transmission systems. This book is aimed at students and engineers who wish to familiarise themselves with the subject of power system protection, as well as the experienced user, entering the area of numerical distance protection. Furthermore it serves as a reference guide for solving application problems. For this fourth edition all contents, especially the descriptions of numerical protection devices and the very useful appendix have been revised and updated.
Leading Research in Educational Administration. A Festschrift for Wayne K. Hoy Leading Research in Educational Administration. A Festschrift for Wayne K. Hoy Новинка

Leading Research in Educational Administration. A Festschrift for Wayne K. Hoy

6252 руб.
A volume in Research and Theory in Educational AdministrationSeries Editors: Wayne K. Hoy, The Ohio State Universityand Michael DiPaola, The College of William and MaryLeading Research in Educational Administration: A Festschrift for Wayne K. Hoy is the tenth in aseries on research and theory dedicated to advancing our understanding of schools through empirical studyand theoretical analysis that was initiated by Wayne and Cecil G. Miskel. This tenth anniversary editionhonors and celebrates the research leadership Wayne has provided in the field of educational administrationthrough his distinguished career. The festschrift is organized around the analysis of school contexts andincludes constructs Wayne and his protégés have studied and researched: climate, trust, efficacy, academicoptimism, organizational citizenship, and mindfulness. It concludes with the work of colleagues on the salientcontemporary issues of innovation, power, leadership succession, and several others focused on improving schools. Chapter authors all have closeconnections to Wayne - former students and their students, as well as colleagues and friends.This series on Theory and Research in Educational Administration is about understanding schools. We welcome articles and analyses thatexplain school organizations and administration. We are interested in the "why" questions about schools. To that end, case analyses, surveys, largedata base analyses, experimental studies, and theoretical analyses are al...
Rogers No Wave. Underground and Experimental Music and Contemporary Art in New York City Rogers No Wave. Underground and Experimental Music and Contemporary Art in New York City Новинка

Rogers No Wave. Underground and Experimental Music and Contemporary Art in New York City

3802 руб.
No Wave: Underground and Experimental Music and Contemporary Art in New York City
Shizhu Wen Principles of Tribology Shizhu Wen Principles of Tribology Новинка

Shizhu Wen Principles of Tribology

11962.39 руб.
Updated to include the timely and important topics of MEMS and rolling friction, Principles of Tribology is a compilation of current developments from tribology research, coupled with tribology fundamentals and applications. Essential topics include lubrication theory, lubrication design, friction mechanism, wear mechanism, friction control, and their applications. Besides classical tribology content, the book also covers intersecting research areas of tribology, as well as the regularities and characteristics of the tribological phenomena in practice. Furthermore, it presents the basic theory, numerical analysis methods and experimental measuring techniques of tribology as well as their application in engineering. Newly expanded and updated to include new tribological material on MEMS and green tribology, its key concepts and applications Systematically brings the reader through fundamental theories, basic mechanisms through to the latest research Emphasizes practical tribological phenomena, supported by numerical analysis and experimental measurement techniques Discusses nano-tribology, thin film lubrication and its applications, topics which are growing in importance A comprehensive look at the fundamentals and latest research, this second edition of Principles of Tribology is an essential textbook for graduate and senior undergraduate students specializing in tribology and related mechanical engineering fields.
Ibrahim Dincer Drying Phenomena. Theory and Applications Ibrahim Dincer Drying Phenomena. Theory and Applications Новинка

Ibrahim Dincer Drying Phenomena. Theory and Applications

9911.42 руб.
Comprehensively covers conventional and novel drying systems and applications, while keeping a focus on the fundamentals of drying phenomena. Presents detailed thermodynamic and heat/mass transfer analyses in a reader-friendly and easy-to-follow approach Includes case studies, illustrative examples and problems Presents experimental and computational approaches Includes comprehensive information identifying the roles of flow and heat transfer mechanisms on the drying phenomena Considers industrial applications, corresponding criterion, complications, prospects, etc. Discusses novel drying technologies, the corresponding research platforms and potential solutions
Marilyn Shepherd NUMERICAL REASONING TESTS. Sample Beginner, Intermediate and Advanced Numerical Reasoning Detailed Test Questions and Answers (Testing Series) Marilyn Shepherd NUMERICAL REASONING TESTS. Sample Beginner, Intermediate and Advanced Numerical Reasoning Detailed Test Questions and Answers (Testing Series) Новинка

Marilyn Shepherd NUMERICAL REASONING TESTS. Sample Beginner, Intermediate and Advanced Numerical Reasoning Detailed Test Questions and Answers (Testing Series)

1989 руб.
NUMERICAL REASONING TESTS: Sample Beginner, Intermediate and Advanced Numerical Reasoning Detailed Test Questions and Answers is the ULTIMATE book for passing Numerical Reasoning Tests at any level. This book provides clear and detailed information on everything you will need to know about Numerical Reasoning Tests with explanations to every question, and how they will help you pass initial recruitment stages. It contains in-depth advice on numerical problems such as: Adding, Subtracting, Fractions, Graphs, Percentages, Decimals, Ratios, Data Analysis, Data Interpretation, Information Handling, Quantitative Reasoning and much more. This workbook goes beyond others on the market by not only teaching you how to pass all levels of numeracy based questions but by also providing detailed explanations within each question answer, making it the most comprehensive guide to passing Numerical Reasoning tests on the market.
Joe Wiart Radio-Frequency Human Exposure Assessment. From Deterministic to Stochastic Methods Joe Wiart Radio-Frequency Human Exposure Assessment. From Deterministic to Stochastic Methods Новинка

Joe Wiart Radio-Frequency Human Exposure Assessment. From Deterministic to Stochastic Methods

9647.09 руб.
Nowadays approximately 6 billion people use a mobile phone and they now take a central position within our daily lives. The 1990s saw a tremendous increase in the use of wireless systems and the democratization of this means of communication. To allow the communication of millions of phones, computers and, more recently, tablets to be connected, millions of access points and base station antennas have been extensively deployed. Small cells and the Internet of Things with the billions of connected objects will reinforce this trend. This growing use of wireless communications has been accompanied by a perception of risk to the public from exposure to radio frequency (RF) electromagnetic field (EMF). To address this concern, biomedical research has been conducted. It has also been important to develop and improve dosimetry methods and protocols that could be used to evaluate EMF exposure and check compliance with health limits. To achieve this, much effort has was made in the 1990s and 2000s. Experimental and numerical methods, including statistical methods, have been developed. This book provides an overview and description of the basic and advanced methods that have been developed for human RF exposure assessment. It covers experimental, numerical, deterministic and stochastic methods.
Jérôme Molimard Experimental Mechanics of Solids and Structures Jérôme Molimard Experimental Mechanics of Solids and Structures Новинка

Jérôme Molimard Experimental Mechanics of Solids and Structures

8875.32 руб.
From the characterization of materials to accelerated life testing, experimentation with solids and structures is present in all stages of the design of mechanical devices. Sometimes only an experimental model can bring the necessary elements for understanding, the physics under study just being too complex for an efficient numerical model. This book presents the classical tools in the experimental approach to mechanical engineering, as well as the methods that have revolutionized the field over the past 20 years: photomechanics, signal processing, statistical data analysis, design of experiments, uncertainty analysis, etc. Experimental Mechanics of Solids and Structures also replaces mechanical testing in a larger context: firstly, that of the experimental model, with its own hypotheses; then that of the knowledge acquisition process, which is structured and robust; finally, that of a reliable analysis of the results obtained, in a context where uncertainty could be important.
Stehlik Jiri Mathematical and Computational Methods and Algorithms in Biomechanics. Human Skeletal Systems Stehlik Jiri Mathematical and Computational Methods and Algorithms in Biomechanics. Human Skeletal Systems Новинка

Stehlik Jiri Mathematical and Computational Methods and Algorithms in Biomechanics. Human Skeletal Systems

10453.78 руб.
Cutting-edge solutions to current problems in orthopedics, supported by modeling and numerical analysis Despite the current successful methods and achievements of good joint implantations, it is essential to further optimize the shape of implants so they may better resist extreme long-term mechanical demands. This book provides the orthopedic, biomechanical, and mathematical basis for the simulation of surgical techniques in orthopedics. It focuses on the numerical modeling of total human joint replacements and simulation of their functions, along with the rigorous biomechanics of human joints and other skeletal parts. The book includes: An introduction to the anatomy and biomechanics of the human skeleton, biomaterials, and problems of alloarthroplasty The definition of selected simulated orthopedic problems Constructions of mathematical model problems of the biomechanics of the human skeleton and its parts Replacement parts of the human skeleton and corresponding mathematical model problems Detailed mathematical analyses of mathematical models based on functional analysis and finite element methods Biomechanical analyses of particular parts of the human skeleton, joints, and corresponding replacements A discussion of the problems of data processing from nuclear magnetic resonance imaging and computer tomography This timely book offers a wealth of information on the current research in this field. The theories presented are applied to specific problems of orthopedics. Numerical results are presented and discussed from both biomechanical and orthopedic points of view and treatment methods are also briefly addressed. Emphasis is placed on the variational approach to the investigated model problems while preserving the orthopedic nature of the investigated problems. The book also presents a study of algorithmic procedures based on these simulation models. This is a highly useful tool for designers, researchers, and manufacturers of joint implants who require the results of suggested experiments to improve existing shapes or to design new shapes. It also benefits graduate students in orthopedics, biomechanics, and applied mathematics.
Jong-Shyong Wu Analytical and Numerical Methods for Vibration Analyses Jong-Shyong Wu Analytical and Numerical Methods for Vibration Analyses Новинка

Jong-Shyong Wu Analytical and Numerical Methods for Vibration Analyses

12275.27 руб.
Illustrates theories and associated mathematical expressions with numerical examples using various methods, leading to exact solutions, more accurate results, and more computationally efficient techniques This book presents the derivations of the equations of motion for all structure foundations using either the continuous model or the discrete model. This mathematical display is a strong feature of the book as it helps to explain in full detail how calculations are reached and interpreted. In addition to the simple 'uniform' and 'straight' beams, the book introduces solution techniques for the complicated ‘non uniform’ beams (including linear or non-linear tapered beams), and curved beams. Most of the beams are analyzed by taking account of the effects of shear deformation and rotary inertia of the beams themselves as well as the eccentricities and mass moments of inertia of the attachments. Demonstrates approaches which dramatically cut CPU times to a fraction of conventional FEM Presents «mode shapes» in addition to natural frequencies, which are critical for designers Gives detailed derivations for continuous and discrete model equations of motions Summarizes the analytical and numerical methods for the natural frequencies, mode shapes, and time histories of straight structures rods shafts Euler beams strings Timoshenko beams membranes/thin plates Conical rods and shafts Tapered beams Curved beams Has applications for students taking courses including vibration mechanics, dynamics of structures, and finite element analyses of structures, the transfer matrix method, and Jacobi method This book is ideal for graduate students in mechanical, civil, marine, aeronautical engineering courses as well as advanced undergraduates with a background in General Physics, Calculus, and Mechanics of Material. The book is also a handy reference for researchers and professional engineers.
Chen Reuven Thermally and Optically Stimulated Luminescence. A Simulation Approach Chen Reuven Thermally and Optically Stimulated Luminescence. A Simulation Approach Новинка

Chen Reuven Thermally and Optically Stimulated Luminescence. A Simulation Approach

13463.2 руб.
Thermoluminescence (TL) and optically stimulated luminescence (OSL) are two of the most important techniques used in radiation dosimetry. They have extensive practical applications in the monitoring of personnel radiation exposure, in medical dosimetry, environmental dosimetry, spacecraft, nuclear reactors, food irradiation etc., and in geological /archaeological dating. Thermally and Optically Stimulated Luminescence: A Simulation Approach describes these phenomena, the relevant theoretical models and their prediction, using both approximations and numerical simulation. The authors concentrate on an alternative approach in which they simulate various experimental situations by numerically solving the relevant coupled differential equations for chosen sets of parameters. Opening with a historical overview and background theory, other chapters cover experimental measurements, dose dependence, dating procedures, trapping parameters, applications, radiophotoluminescence, and effects of ionization density. Designed for practitioners, researchers and graduate students in the field of radiation dosimetry, Thermally and Optically Stimulated Luminescence provides an essential synthesis of the major developments in modeling and numerical simulations of thermally and optically stimulated processes.
Bharti Vyas The PH Diet: The pHenomenal Dietary System Bharti Vyas The PH Diet: The pHenomenal Dietary System Новинка

Bharti Vyas The PH Diet: The pHenomenal Dietary System

365.38 руб.
All foods are either acid- or alkaline-forming and the body's health and beauty is entirely affected by choosing the right balance.Too many acid-forming foods can lead to conditions such as low energy, lifeless skin and hair and brittle bones.This practical book provides a 3 stage plan, food lists and simple recipe ideas.Each food we eat is either acid- or alkaline-forming due to how it is metabolised at cellular level. As our body is held within a particular alkaline range, alkaline-forming foods pose no problems to the body- but if we eat too many acid-forming foods, our body does not have the mechanisms to deal with them.A diet too high in acid-forming foods, such as cheese, wheat, sugar, processed foods and meat, can result in a wide range of health problems, including low energy, weight gain, skin problems, dull hair and eyes, brittle bones and hormonal imbalances.The plan has three stages:1) concentrates on your drinking habits, getting you to drink water on the hour and replace coffee, tea, and fizzy drinks with healthier options, bit by bit.2) helps you decrease the wheat and dairy in your diet, increasing vegetable content to replenish your mineral store and the calcium in your bones.3) is the alkaline diet where you are introduced to more raw or less cooked veggies. At this stage you can reintroduce more fruit and fruit juice (which are acid forming)The book contains a list of 80 alkaline forming foods to use and 20 of the better acid-forming foods and over 40 simple recipe ideas to reduce your toxic load.
Stephen E. Braude ESP and Psychokinesis. A Philosophical Examination Stephen E. Braude ESP and Psychokinesis. A Philosophical Examination Новинка

Stephen E. Braude ESP and Psychokinesis. A Philosophical Examination

3389 руб.
This work was the first sustained philosophical study of psychic phenomena to follow C.D. Broad's LECTURES ON PSYCHICAL RESEARCH, written nearly twenty years earlier. The author clearly defines the categories of psychic phenomena, surveys the most compelling experimental data, and traces their implications for the philosophy of science and the philosophy of mind. He considers carefully the abstract presuppositions underlying leading theories of psychic phenomena, and he offers bold criticisms of both mechanistic analyses of communication and psychophysical identity theories. In addition, he challenges the received view that experimental repeatability is the paramount criterion for evaluating parapsychological research, and he exposes the deep confusions underlying Jung's concept of synchronicity.
Qiuliang Wang Practical Design of Magnetostatic Structure Using Numerical Simulation Qiuliang Wang Practical Design of Magnetostatic Structure Using Numerical Simulation Новинка

Qiuliang Wang Practical Design of Magnetostatic Structure Using Numerical Simulation

11576.51 руб.
Magnets are widely used in industry, medical, scientific instruments, and electrical equipment. They are the basic tools for scientific research and electromagnetic devices. Numerical methods for the magnetic field analysis combined with mathematical optimization from practical applications of the magnets have been widely studied in recent years. It is necessary for professional researchers, engineers, and students to study these numerical methods for the complex magnet structure design instead of using traditional «trial-and-error» methods. Those working in this field will find this book useful as a reference to help reduce costs and obtain good magnetic field quality. Presents a clear introduction to magnet technology, followed by basic theories, numerical analysis, and practical applications Emphasizes the latest developments in magnet design, including MRI systems Provides comprehensive numerical techniques that provide solutions to practical problems Introduces the latest computation techniques for optimizing and characterizing the magnetostatic structure design Well organized and adaptable by researchers, engineers, lecturers, and students Appendix available on the Wiley Companion Website As a comprehensive treatment of the topic, Practical Design of Magnetostatic Structure Using Numerical Simulation is ideal for researchers in the field of magnets and their applications, materials scientists, structural engineers, and graduate students in electrical engineering. The book will also better equip mechanical engineers and aerospace engineers.
Kamal Al-Haddad Power Quality. Problems and Mitigation Techniques Kamal Al-Haddad Power Quality. Problems and Mitigation Techniques Новинка

Kamal Al-Haddad Power Quality. Problems and Mitigation Techniques

11190.63 руб.
Maintaining a stable level of power quality in the distribution network is a growing challenge due to increased use of power electronics converters in domestic, commercial and industrial sectors. Power quality deterioration is manifested in increased losses; poor utilization of distribution systems; mal-operation of sensitive equipment and disturbances to nearby consumers, protective devices, and communication systems. However, as the energy-saving benefits will result in increased AC power processed through power electronics converters, there is a compelling need for improved understanding of mitigation techniques for power quality problems. This timely book comprehensively identifies, classifies, analyses and quantifies all associated power quality problems, including the direct integration of renewable energy sources in the distribution system, and systematically delivers mitigation techniques to overcome these problems. Key features: • Emphasis on in-depth learning of the latest topics in power quality extensively illustrated with waveforms and phasor diagrams. • Essential theory supported by solved numerical examples, review questions, and unsolved numerical problems to reinforce understanding. • Companion website contains solutions to unsolved numerical problems, providing hands-on experience. Senior undergraduate and graduate electrical engineering students and instructors will find this an invaluable resource for education in the field of power quality. It will also support continuing professional development for practicing engineers in distribution and transmission system operators.
George Pinder F. Numerical Methods for Solving Partial Differential Equations. A Comprehensive Introduction for Scientists and Engineers George Pinder F. Numerical Methods for Solving Partial Differential Equations. A Comprehensive Introduction for Scientists and Engineers Новинка

George Pinder F. Numerical Methods for Solving Partial Differential Equations. A Comprehensive Introduction for Scientists and Engineers

11879.3 руб.
A comprehensive guide to numerical methods for simulating physical-chemical systems This book offers a systematic, highly accessible presentation of numerical methods used to simulate the behavior of physical-chemical systems. Unlike most books on the subject, it focuses on methodology rather than specific applications. Written for students and professionals across an array of scientific and engineering disciplines and with varying levels of experience with applied mathematics, it provides comprehensive descriptions of numerical methods without requiring an advanced mathematical background. Based on its author’s more than forty years of experience teaching numerical methods to engineering students, Numerical Methods for Solving Partial Differential Equations presents the fundamentals of all of the commonly used numerical methods for solving differential equations at a level appropriate for advanced undergraduates and first-year graduate students in science and engineering. Throughout, elementary examples show how numerical methods are used to solve generic versions of equations that arise in many scientific and engineering disciplines. In writing it, the author took pains to ensure that no assumptions were made about the background discipline of the reader. Covers the spectrum of numerical methods that are used to simulate the behavior of physical-chemical systems that occur in science and engineering Written by a professor of engineering with more than forty years of experience teaching numerical methods to engineers Requires only elementary knowledge of differential equations and matrix algebra to master the material Designed to teach students to understand, appreciate and apply the basic mathematics and equations on which Mathcad and similar commercial software packages are based Comprehensive yet accessible to readers with limited mathematical knowledge, Numerical Methods for Solving Partial Differential Equations is an excellent text for advanced undergraduates and first-year graduate students in the sciences and engineering. It is also a valuable working reference for professionals in engineering, physics, chemistry, computer science, and applied mathematics.
Bargaining and Market Behavior: Essays in Experimental Economics Bargaining and Market Behavior: Essays in Experimental Economics Новинка

Bargaining and Market Behavior: Essays in Experimental Economics

9941 руб.
This second collection of papers by Vernon L. Smith, a creator of the field of experimental economics, includes many of his primary authored and coauthored contributions on bargaining and market behavior between 1990 and 1998. The essays explore the use of laboratory experiments to test propositions derived from economics and game theory. They also investigate the relationship between experimental economics and psychology, particularly the field of evolutionary psychology, using the latter to broaden theperspective in which experimental results are interpreted. Specific themes investigated include rational choice, the notion of fairness, game theory and extensive form experimental interactions, institutions and market behavior, and the study of laboratory stock markets.
Wu Shen R. Introduction to the Explicit Finite Element Method for Nonlinear Transient Dynamics Wu Shen R. Introduction to the Explicit Finite Element Method for Nonlinear Transient Dynamics Новинка

Wu Shen R. Introduction to the Explicit Finite Element Method for Nonlinear Transient Dynamics

10849.76 руб.
A systematic introduction to the theories and formulations of the explicit finite element method As numerical technology continues to grow and evolve with industrial applications, understanding the explicit finite element method has become increasingly important, particularly in the areas of crashworthiness, metal forming, and impact engineering. Introduction to the Explicit Finite Element Method for Nonlinear Transient Dynamics is the first book to address specifically what is now accepted as the most successful numerical tool for nonlinear transient dynamics. The book aids readers in mastering the explicit finite element method and programming code without requiring extensive background knowledge of the general finite element. The authors present topics relating to the variational principle, numerical procedure, mechanical formulation, and fundamental achievements of the convergence theory. In addition, key topics and techniques are provided in four clearly organized sections: • Fundamentals explores a framework of the explicit finite element method for nonlinear transient dynamics and highlights achievements related to the convergence theory • Element Technology discusses four-node, three-node, eight-node, and two-node element theories • Material Models outlines models of plasticity and other nonlinear materials as well as the mechanics model of ductile damage • Contact and Constraint Conditions covers subjects related to three-dimensional surface contact, with examples solved analytically, as well as discussions on kinematic constraint conditions Throughout the book, vivid figures illustrate the ideas and key features of the explicit finite element method. Examples clearly present results, featuring both theoretical assessments and industrial applications. Introduction to the Explicit Finite Element Method for Nonlinear Transient Dynamics is an ideal book for both engineers who require more theoretical discussions and for theoreticians searching for interesting and challenging research topics. The book also serves as an excellent resource for courses on applied mathematics, applied mechanics, and numerical methods at the graduate level.
James Epperson F. An Introduction to Numerical Methods and Analysis James Epperson F. An Introduction to Numerical Methods and Analysis Новинка

James Epperson F. An Introduction to Numerical Methods and Analysis

10532.98 руб.
Praise for the First Edition «. . . outstandingly appealing with regard to its style, contents, considerations of requirements of practice, choice of examples, and exercises.»—Zentralblatt MATH «. . . carefully structured with many detailed worked examples.»—The Mathematical Gazette The Second Edition of the highly regarded An Introduction to Numerical Methods and Analysis provides a fully revised guide to numerical approximation. The book continues to be accessible and expertly guides readers through the many available techniques of numerical methods and analysis. An Introduction to Numerical Methods and Analysis, Second Edition reflects the latest trends in the field, includes new material and revised exercises, and offers a unique emphasis on applications. The author clearly explains how to both construct and evaluate approximations for accuracy and performance, which are key skills in a variety of fields. A wide range of higher-level methods and solutions, including new topics such as the roots of polynomials, spectral collocation, finite element ideas, and Clenshaw-Curtis quadrature, are presented from an introductory perspective, and the Second Edition also features: Chapters and sections that begin with basic, elementary material followed by gradual coverage of more advanced material Exercises ranging from simple hand computations to challenging derivations and minor proofs to programming exercises Widespread exposure and utilization of MATLAB An appendix that contains proofs of various theorems and other material The book is an ideal textbook for students in advanced undergraduate mathematics and engineering courses who are interested in gaining an understanding of numerical methods and numerical analysis.
Zhonghui Wu Multi-mode Active Vibration Control Using H. Optimization MIMO Positive Position Feedback Based Genetic Algorithm Zhonghui Wu Multi-mode Active Vibration Control Using H. Optimization MIMO Positive Position Feedback Based Genetic Algorithm Новинка

Zhonghui Wu Multi-mode Active Vibration Control Using H. Optimization MIMO Positive Position Feedback Based Genetic Algorithm

6314 руб.
Master's Thesis from the year 2014 in the subject Engineering - General, Basics, Flinders University (School of Computer Science, Engineering and Mathematics), language: English, abstract: In this thesis, experimental, analytical and numerical analysis are used for distributed parameter plate structure modeling, an infinite-dimensional and a very high-order plate mathematical transfer function model is derived based on modal analysis and numerical analysis results. A feed-through truncated plate model which minimizing the effect of truncated modes on spatial low-frequency dynamics of the system by adding a spatial zero frequency term to the truncated model is provided and numerical software MATLAB is used to compare the feed-through truncated plate model with traditional balanced reduction plate model which is used to decrease the dimensions and orders of the infinite-dimensional and very high-order plate model. Active vibration control strategy is presented for a flexible plate structure with bonded three self-sensing magnetic transducers which guarantee unconditional stability of the closed-loop system similar as collocated control system. Both multi-mode SISO and MIMO control laws based upon positive position feedback is developed for plate structure vibration suppression. The proposed multi-mode PPF controllers can be tuned to a chosen number of modes and increase the damping of the plate structure so as to minimize the chosen number of resonant responses. Stability c...
William Schiesser E. Method of Lines PDE Analysis in Biomedical Science and Engineering William Schiesser E. Method of Lines PDE Analysis in Biomedical Science and Engineering Новинка

William Schiesser E. Method of Lines PDE Analysis in Biomedical Science and Engineering

8875.32 руб.
Presents the methodology and applications of ODE and PDE models within biomedical science and engineering With an emphasis on the method of lines (MOL) for partial differential equation (PDE) numerical integration, Method of Lines PDE Analysis in Biomedical Science and Engineering demonstrates the use of numerical methods for the computer solution of PDEs as applied to biomedical science and engineering (BMSE). Written by a well-known researcher in the field, the book provides an introduction to basic numerical methods for initial/boundary value PDEs before moving on to specific BMSE applications of PDEs. Featuring a straightforward approach, the book’s chapters follow a consistent and comprehensive format. First, each chapter begins by presenting the model as an ordinary differential equation (ODE)/PDE system, including the initial and boundary conditions. Next, the programming of the model equations is introduced through a series of R routines that primarily implement MOL for PDEs. Subsequently, the resulting numerical and graphical solution is discussed and interpreted with respect to the model equations. Finally, each chapter concludes with a review of the numerical algorithm performance, general observations and results, and possible extensions of the model. Method of Lines PDE Analysis in Biomedical Science and Engineering also includes: Examples of MOL analysis of PDEs, including BMSE applications in wave front resolution in chromatography, VEGF angiogenesis, thermographic tumor location, blood-tissue transport, two fluid and membrane mass transfer, artificial liver support system, cross diffusion epidemiology, oncolytic virotherapy, tumor cell density in glioblastomas, and variable grids Discussions on the use of R software, which facilitates immediate solutions to differential equation problems without having to first learn the basic concepts of numerical analysis for PDEs and the programming of PDE algorithms A companion website that provides source code for the R routines Method of Lines PDE Analysis in Biomedical Science and Engineering is an introductory reference for researchers, scientists, clinicians, medical researchers, mathematicians, statisticians, chemical engineers, epidemiologists, and pharmacokineticists as well as anyone interested in clinical applications and the interpretation of experimental data with differential equation models. The book is also an ideal textbook for graduate-level courses in applied mathematics, BMSE, biology, biophysics, biochemistry, medicine, and engineering.
William Schiesser E. Spline Collocation Methods for Partial Differential Equations. With Applications in R William Schiesser E. Spline Collocation Methods for Partial Differential Equations. With Applications in R Новинка

William Schiesser E. Spline Collocation Methods for Partial Differential Equations. With Applications in R

9647.09 руб.
A comprehensive approach to numerical partial differential equations Spline Collocation Methods for Partial Differential Equations combines the collocation analysis of partial differential equations (PDEs) with the method of lines (MOL) in order to simplify the solution process. Using a series of example applications, the author delineates the main features of the approach in detail, including an established mathematical framework. The book also clearly demonstrates that spline collocation can offer a comprehensive method for numerical integration of PDEs when it is used with the MOL in which spatial (boundary value) derivatives are approximated with splines, including the boundary conditions. R, an open-source scientific programming system, is used throughout for programming the PDEs and numerical algorithms, and each section of code is clearly explained. As a result, readers gain a complete picture of the model and its computer implementation without having to fill in the details of the numerical analysis, algorithms, or programming. The presentation is not heavily mathematical, and in place of theorems and proofs, detailed example applications are provided. Appropriate for scientists, engineers, and applied mathematicians, Spline Collocation Methods for Partial Differential Equations: Introduces numerical methods by first presenting basic examples followed by more complicated applications Employs R to illustrate accurate and efficient solutions of the PDE models Presents spline collocation as a comprehensive approach to the numerical integration of PDEs and an effective alternative to other, well established methods Discusses how to reproduce and extend the presented numerical solutions Identifies the use of selected algorithms, such as the solution of nonlinear equations and banded or sparse matrix processing Features a companion website that provides the related R routines Spline Collocation Methods for Partial Differential Equations is a valuable reference and/or self-study guide for academics, researchers, and practitioners in applied mathematics and engineering, as well as for advanced undergraduates and graduate-level students.
Klaus Hinkelmann Design and Analysis of Experiments, Volume 3. Special Designs and Applications Klaus Hinkelmann Design and Analysis of Experiments, Volume 3. Special Designs and Applications Новинка

Klaus Hinkelmann Design and Analysis of Experiments, Volume 3. Special Designs and Applications

11483.32 руб.
Provides timely applications, modifications, and extensions of experimental designs for a variety of disciplines Design and Analysis of Experiments, Volume 3: Special Designs and Applications continues building upon the philosophical foundations of experimental design by providing important, modern applications of experimental design to the many fields that utilize them. The book also presents optimal and efficient designs for practice and covers key topics in current statistical research. Featuring contributions from leading researchers and academics, the book demonstrates how the presented concepts are used across various fields from genetics and medicinal and pharmaceutical research to manufacturing, engineering, and national security. Each chapter includes an introduction followed by the historical background as well as in-depth procedures that aid in the construction and analysis of the discussed designs. Topical coverage includes: Genetic cross experiments, microarray experiments, and variety trials Clinical trials, group-sequential designs, and adaptive designs Fractional factorial and search, choice, and optimal designs for generalized linear models Computer experiments with applications to homeland security Robust parameter designs and split-plot type response surface designs Analysis of directional data experiments Throughout the book, illustrative and numerical examples utilize SAS®, JMP®, and R software programs to demonstrate the discussed techniques. Related data sets and software applications are available on the book's related FTP site. Design and Analysis of Experiments, Volume 3 is an ideal textbook for graduate courses in experimental design and also serves as a practical, hands-on reference for statisticians and researchers across a wide array of subject areas, including biological sciences, engineering, medicine, and business.
Andrei Besedin Top Numerical Methods With Matlab For Beginners! Andrei Besedin Top Numerical Methods With Matlab For Beginners! Новинка

Andrei Besedin Top Numerical Methods With Matlab For Beginners!

652 руб.
Are you someone that involves in computation? Numerical methods cover some approaches and popular methods that you use daily. One of the best ways to apply numerical methods in any of your computations is by using Matlab. Yes, Matlab! This might seems like a big deal to you, but we believe it shouldn’t. So we came up with an incredibly short book titled “Top Numerical Methods with Matlab for Beginners.” If you already have the basic math knowledge, fundamental knowledge of computing and some familiarity with Matlab, applying the top numerical methods with Matlab as a beginner is not going to be a problem. With our powerful short product, you will not have any difficulty obtaining numerical solutions to problems. Of course, it is just one of the many benefits our top-notch book has to offer you if you purchase it. Some of the other advantages you can derive from our product are:•Top numerical methods with Matlab and how to apply them•It offers navigation index you can use as reference guide•It shows how computations involving vectors and matrices are naturally expressed in Matlab•Also, you will know how numerical methods work and why they fail•Examples are provided for you to have a better understandingThe advantages above are just little out of the huge benefits our top winning short book is ready to offer you.We know our book does not provide ultimate information about Matlab. But we have a primary goal, and it is to provide a solid foundation in top numerical methods using ...
Jeffrey Heys J. Chemical and Biomedical Engineering Calculations Using Python Jeffrey Heys J. Chemical and Biomedical Engineering Calculations Using Python Новинка

Jeffrey Heys J. Chemical and Biomedical Engineering Calculations Using Python

5784.59 руб.
Presents standard numerical approaches for solving common mathematical problems in engineering using Python. Covers the most common numerical calculations used by engineering students Covers Numerical Differentiation and Integration, Initial Value Problems, Boundary Value Problems, and Partial Differential Equations Focuses on open ended, real world problems that require students to write a short report/memo as part of the solution process Includes an electronic download of the Python codes presented in the book
Pere Colet Stochastic Numerical Methods. An Introduction for Students and Scientists Pere Colet Stochastic Numerical Methods. An Introduction for Students and Scientists Новинка

Pere Colet Stochastic Numerical Methods. An Introduction for Students and Scientists

8798.44 руб.
Stochastic Numerical Methods introduces at Master level the numerical methods that use probability or stochastic concepts to analyze random processes. The book aims at being rather general and is addressed at students of natural sciences (Physics, Chemistry, Mathematics, Biology, etc.) and Engineering, but also social sciences (Economy, Sociology, etc.) where some of the techniques have been used recently to numerically simulate different agent-based models. Examples included in the book range from phase-transitions and critical phenomena, including details of data analysis (extraction of critical exponents, finite-size effects, etc.), to population dynamics, interfacial growth, chemical reactions, etc. Program listings are integrated in the discussion of numerical algorithms to facilitate their understanding. From the contents: Review of Probability Concepts Monte Carlo Integration Generation of Uniform and Non-uniform Random Numbers: Non-correlated Values Dynamical Methods Applications to Statistical Mechanics Introduction to Stochastic Processes Numerical Simulation of Ordinary and Partial Stochastic Differential Equations Introduction to Master Equations Numerical Simulations of Master Equations Hybrid Monte Carlo Generation of n-Dimensional Correlated Gaussian Variables Collective Algorithms for Spin Systems Histogram Extrapolation Multicanonical Simulations
Guido Buzzi-Ferraris Nonlinear Systems and Optimization for the Chemical Engineer. Solving Numerical Problems Guido Buzzi-Ferraris Nonlinear Systems and Optimization for the Chemical Engineer. Solving Numerical Problems Новинка

Guido Buzzi-Ferraris Nonlinear Systems and Optimization for the Chemical Engineer. Solving Numerical Problems

11190.63 руб.
This third book in a suite of four practical guides is an engineer's companion to using numerical methods for the solution of complex mathematical problems. The required software is provided by way of the freeware mathematical library BzzMath that is developed and maintained by the authors. The present volume focuses on optimization and nonlinear systems solution. The book describes numerical methods, innovative techniques and strategies that are all implemented in a well-established, freeware library. Each of these handy guides enables the reader to use and implement standard numerical tools for their work, explaining the theory behind the various functions and problem solvers, and showcasing applications in diverse scientific and engineering fields. Numerous examples, sample codes, programs and applications are proposed and discussed. The book teaches engineers and scientists how to use the latest and most powerful numerical methods for their daily work.
Glass V. Glass, Victor L. Willson, John M. Gottman Design and Analysis of Time-Series Experiments (PB) Glass V. Glass, Victor L. Willson, John M. Gottman Design and Analysis of Time-Series Experiments (PB) Новинка

Glass V. Glass, Victor L. Willson, John M. Gottman Design and Analysis of Time-Series Experiments (PB)

6277 руб.
Hailed as a landmark in the development of experimental methods when itappeared in 1975, Design and Analysis of Time-Series Experiments is availableagain after several years of being out of print.Gene V Glass, Victor L. Willson and John M. Gottman have carried forward thedesign and analysis of perhaps the most powerful and useful quasi-experimentaldesign identified by their mentors in the classic Campbell & Stanley text Experimental and Quasi-experimentalDesign for Research (1966). In an era when governments seek to resolve questions of experimental validity byfiat and the label "Scientifically Based Research" is appropriated for only certain privileged experimentaldesigns, nothing could be more appropriate than to bring back the classic text that challenges doctrinaireopinions of proper causal analysis.Glass, Willson & Gottman introduce and illustrate an armamentarium of interrupted time-series experimentaldesigns that offer some of the most powerful tools for discovering andvalidating causal relationships in social and education policy analysis.Drawing on the ground-breaking statistical analytic tools of Box & Jenkins,the authors extend the comprehensive autoregressive-integrated-movingaverages(ARIMA) model to accommodate significance testing andestimation of the effects of interventions into real world time-series. Designsand full statistical analyses are richly illustrated with actual examples fromeducation, behavioral psychology, and sociology.
Lennart Edsberg Introduction to Computation and Modeling for Differential Equations Lennart Edsberg Introduction to Computation and Modeling for Differential Equations Новинка

Lennart Edsberg Introduction to Computation and Modeling for Differential Equations

7714.01 руб.
Uses mathematical, numerical, and programming tools to solve differential equations for physical phenomena and engineering problems Introduction to Computation and Modeling for Differential Equations, Second Edition features the essential principles and applications of problem solving across disciplines such as engineering, physics, and chemistry. The Second Edition integrates the science of solving differential equations with mathematical, numerical, and programming tools, specifically with methods involving ordinary differential equations; numerical methods for initial value problems (IVPs); numerical methods for boundary value problems (BVPs); partial differential equations (PDEs); numerical methods for parabolic, elliptic, and hyperbolic PDEs; mathematical modeling with differential equations; numerical solutions; and finite difference and finite element methods. The author features a unique “Five-M” approach: Modeling, Mathematics, Methods, MATLAB®, and Multiphysics, which facilitates a thorough understanding of how models are created and preprocessed mathematically with scaling, classification, and approximation and also demonstrates how a problem is solved numerically using the appropriate mathematical methods. With numerous real-world examples to aid in the visualization of the solutions, Introduction to Computation and Modeling for Differential Equations, Second Edition includes: New sections on topics including variational formulation, the finite element method, examples of discretization, ansatz methods such as Galerkin’s method for BVPs, parabolic and elliptic PDEs, and finite volume methods Numerous practical examples with applications in mechanics, fluid dynamics, solid mechanics, chemical engineering, heat conduction, electromagnetic field theory, and control theory, some of which are solved with computer programs MATLAB and COMSOL Multiphysics® Additional exercises that introduce new methods, projects, and problems to further illustrate possible applications A related website with select solutions to the exercises, as well as the MATLAB data sets for ordinary differential equations (ODEs) and PDEs Introduction to Computation and Modeling for Differential Equations, Second Edition is a useful textbook for upper-undergraduate and graduate-level courses in scientific computing, differential equations, ordinary differential equations, partial differential equations, and numerical methods. The book is also an excellent self-study guide for mathematics, science, computer science, physics, and engineering students, as well as an excellent reference for practitioners and consultants who use differential equations and numerical methods in everyday situations.
Rick Lindholtz On the Tracks Rick Lindholtz On the Tracks Новинка

Rick Lindholtz On the Tracks

1827 руб.
My spiritual journey began walking along the railroadtracks as a child É it led me to travels across the US andto 7 nations É but my true destination was the heart ofGod, and learning to love and serve others.My journey, and the people I met on the tracks, formedand is forming me.WhatÕs forming you?IÕm still on the tracks, and my journey continues. Comejoin me.
Reza Zarghami Coupled CFD-DEM Modeling. Formulation, Implementation and Application to Multiphase Flows Reza Zarghami Coupled CFD-DEM Modeling. Formulation, Implementation and Application to Multiphase Flows Новинка

Reza Zarghami Coupled CFD-DEM Modeling. Formulation, Implementation and Application to Multiphase Flows

13120.04 руб.
Discusses the CFD-DEM method of modeling which combines both the Discrete Element Method and Computational Fluid Dynamics to simulate fluid-particle interactions. Deals with both theoretical and practical concepts of CFD-DEM, its numerical implementation accompanied by a hands-on numerical code in FORTRAN Gives examples of industrial applications
Frédéric Muttin Marine Coastal and Water Pollutions. Oil Spill Studies Frédéric Muttin Marine Coastal and Water Pollutions. Oil Spill Studies Новинка

Frédéric Muttin Marine Coastal and Water Pollutions. Oil Spill Studies

5781.26 руб.
Identifying efficient solutions to protect coastal regions from marine pollution requires expertise from a range of specialties and strategic approaches. This book gathers information on the impact of oil spills at a coastal level from different experts’ points of view, identifying synergies between domains such as mathematics, numerical modeling, mechanics, biology, economics and law. The collaborative research presented here is based on the 4th International Workshop on Anti-Pollution and Marine Coastal Water Pollution, held in La Rochelle, France at the Engineering School EIGSI, in April 2012. The areas addressed include: materials and structures (fluid-structure and capture interaction, cable and membrane equations, optimization); coastal hydrodynamics (computational fluid dynamics, numerical analysis of shallow water equations, analytical and numerical derivatives); biological impacts (biology, multivariate analysis, indicators); and economics and law (compensation costs, insurance coverage, coastal vulnerability).
Dominique Bonneau Hydrodynamic Bearings Dominique Bonneau Hydrodynamic Bearings Новинка

Dominique Bonneau Hydrodynamic Bearings

9183.59 руб.
This Series provides the necessary elements to the development and validation of numerical prediction models for hydrodynamic bearings. This book describes the rheological models and the equations of lubrication. It also presents the numerical approaches used to solve the above equations by finite differences, finite volumes and finite elements methods.
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A concise, in-depth introduction to active disturbance rejection control theory for nonlinear systems, with numerical simulations and clearly worked out equations Provides the fundamental, theoretical foundation for applications of active disturbance rejection control Features numerical simulations and clearly worked out equations Highlights the advantages of active disturbance rejection control, including small overshooting, fast convergence, and energy savings
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Identifying efficient solutions to protect coastal regions from marine pollution requires expertise from a range of specialties and strategic approaches. This book gathers information on the impact of oil spills at a coastal level from different experts’ points of view, identifying synergies between domains such as mathematics, numerical modeling, mechanics, biology, economics and law. The collaborative research presented here is based on the 4th International Workshop on Anti-Pollution and Marine Coastal Water Pollution, held in La Rochelle, France at the Engineering School EIGSI, in April 2012. The areas addressed include: materials and structures (fluid-structure and capture interaction, cable and membrane equations, optimization); coastal hydrodynamics (computational fluid dynamics, numerical analysis of shallow water equations, analytical and numerical derivatives); biological impacts (biology, multivariate analysis, indicators); and economics and law (compensation costs, insurance coverage, coastal vulnerability).
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Demonstrates the application of DSM to solve a broad range of operator equations The dynamical systems method (DSM) is a powerful computational method for solving operator equations. With this book as their guide, readers will master the application of DSM to solve a variety of linear and nonlinear problems as well as ill-posed and well-posed problems. The authors offer a clear, step-by-step, systematic development of DSM that enables readers to grasp the method's underlying logic and its numerous applications. Dynamical Systems Method and Applications begins with a general introduction and then sets forth the scope of DSM in Part One. Part Two introduces the discrepancy principle, and Part Three offers examples of numerical applications of DSM to solve a broad range of problems in science and engineering. Additional featured topics include: General nonlinear operator equations Operators satisfying a spectral assumption Newton-type methods without inversion of the derivative Numerical problems arising in applications Stable numerical differentiation Stable solution to ill-conditioned linear algebraic systems Throughout the chapters, the authors employ the use of figures and tables to help readers grasp and apply new concepts. Numerical examples offer original theoretical results based on the solution of practical problems involving ill-conditioned linear algebraic systems, and stable differentiation of noisy data. Written by internationally recognized authorities on the topic, Dynamical Systems Method and Applications is an excellent book for courses on numerical analysis, dynamical systems, operator theory, and applied mathematics at the graduate level. The book also serves as a valuable resource for professionals in the fields of mathematics, physics, and engineering.
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Bioelectrochemistry: Fundamentals, Experimental Techniques and Application, covers the fundamental aspects of the chemistry, physics and biology which underlie this subject area. It describes some of the different experimental techniques that can be used to study bioelectrochemical problems and it describes various applications of biolelectrochemisty including amperometric biosensors, immunoassays, electrochemistry of DNA, biofuel cells, whole cell biosensors, in vivo applications and bioelectrosynthesis. By bringing together these different aspects, this work provides a unique source of information in this area, approaching the subject from a cross-disciplinary viewpoint.
Surtonia Burton 21 Days of Prayer . Positivity Surtonia Burton 21 Days of Prayer . Positivity Новинка

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According to several psychological studies, anything that is done for a 21 day period is considered habit forming. Using this ideal, why not break old negative habits and replace them with something positive and new! The 21 Days of Prayer & Positivity is designed to get you in the habit forming state of gravitating to a consistent prayer life and positive thinking.
Kidist Yohannes Teaching English Grammar through Literature Kidist Yohannes Teaching English Grammar through Literature Новинка

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This study focuses on the role of using different literary texts in the teaching of English grammar. Hence, in order to find out whether using literary texts in teaching grammar is effective or not, the study made use of experimental approach forming two groups: experimental and control groups. The experimental group was taught a specific structure through literary texts while the control group did not get any treatment and instructed conventionally. After the treatment, the difference between the performances of the two groups was examined.The data obtained from the results of the two groups, the post - treatment questionnaire and classroom observation revealed that literary texts - based grammar teaching had a profound effect in helping students learn and master the target grammar point being highly interested and motivated. Consequently, this study indicates teachers and other concerned bodies on how to ensure that teaching grammar through literary texts is maximized.

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Uses mathematical, numerical, and programming tools to solve differential equations for physical phenomena and engineering problems Introduction to Computation and Modeling for Differential Equations, Second Edition features the essential principles and applications of problem solving across disciplines such as engineering, physics, and chemistry. The Second Edition integrates the science of solving differential equations with mathematical, numerical, and programming tools, specifically with methods involving ordinary differential equations; numerical methods for initial value problems (IVPs); numerical methods for boundary value problems (BVPs); partial differential equations (PDEs); numerical methods for parabolic, elliptic, and hyperbolic PDEs; mathematical modeling with differential equations; numerical solutions; and finite difference and finite element methods. The author features a unique “Five-M” approach: Modeling, Mathematics, Methods, MATLAB®, and Multiphysics, which facilitates a thorough understanding of how models are created and preprocessed mathematically with scaling, classification, and approximation and also demonstrates how a problem is solved numerically using the appropriate mathematical methods. With numerous real-world examples to aid in the visualization of the solutions, Introduction to Computation and Modeling for Differential Equations, Second Edition includes: New sections on topics including variational formulation, the finite element method, examples of discretization, ansatz methods such as Galerkin’s method for BVPs, parabolic and elliptic PDEs, and finite volume methods Numerous practical examples with applications in mechanics, fluid dynamics, solid mechanics, chemical engineering, heat conduction, electromagnetic field theory, and control theory, some of which are solved with computer programs MATLAB and COMSOL Multiphysics® Additional exercises that introduce new methods, projects, and problems to further illustrate possible applications A related website with select solutions to the exercises, as well as the MATLAB data sets for ordinary differential equations (ODEs) and PDEs Introduction to Computation and Modeling for Differential Equations, Second Edition is a useful textbook for upper-undergraduate and graduate-level courses in scientific computing, differential equations, ordinary differential equations, partial differential equations, and numerical methods. The book is also an excellent self-study guide for mathematics, science, computer science, physics, and engineering students, as well as an excellent reference for practitioners and consultants who use differential equations and numerical methods in everyday situations.
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